首页> 美国卫生研究院文献>Frontiers in Pharmacology >Dual Action of Mexiletine and Its Pyrroline Derivatives as Skeletal Muscle Sodium Channel Blockers and Anti-oxidant Compounds: Toward Novel Therapeutic Potential
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Dual Action of Mexiletine and Its Pyrroline Derivatives as Skeletal Muscle Sodium Channel Blockers and Anti-oxidant Compounds: Toward Novel Therapeutic Potential

机译:Mexiletine及其吡咯啉衍生物作为骨骼肌钠通道阻滞剂和抗氧化剂的双重作用:朝着新的治疗潜力。

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摘要

Mexiletine (Mex) has been recently appointed as an orphan-drug in myotonic-syndromes, being a potent use-dependent blocker of skeletal-muscle sodium channels (NaV1.4). Available evidences about a potential anti-oxidant effect of Mex and its tetramethyl-pyrroline-derivatives in vivo, suggest the possibility to further enlarge the therapeutic potential of Mex-like compounds in myopathies in which alteration of excitation-contraction coupling is paralleled by oxidative stress. In line with this and based on our previous structure-activity-relationship studies, we synthesized new compounds with a tetramethyl-pyrroline-ring on the amino-group of both Mex (VM11) and of its potent use-dependent isopropyl-derivative (CI16). The compounds were tested for their ability to block native NaV1.4 and to exert cyto-protective effects against oxidative-stress injury in myoblasts. Voltage-clamp-recordings on adult myofibers were performed to assess the tonic and use-dependent block of peak sodium-currents (INa) by VM11 and CI16, as well as Mex, VM11 and CI16 were 3 and 6-fold more potent than Mex in producing a tonic-block of peak sodium-currents (INa), respectively. Interestingly, CI16 showed a 40-fold increase of potency with respect to Mex during high-frequency stimulation (10-Hz), resulting the strongest use-dependent Mex-like compound so far. The derivatives also behaved as inactivated channel blockers, however the voltage dependent block was modest. The experimental data fitted with the molecular-modeling simulation based on previously proposed interaction of main pharmacophores with NaV1.4 binding-site. CI16 and VM11 were then compared to Mex and its isopropyl derivative (Me5) for the ability to protect C2C12-cells from H2O2-cytotoxicity in the concentration range effective on Nav1.4. Mex and Me5 showed a moderate cyto-protective effect in the presence of H2O2, Importantly, CI16 and VM11 showed a remarkable cyto-protection at concentrations effective for use-dependent block of NaV1.4. This effect was comparable to that of selected anti-oxidant drugs proved to exert protective effect in preclinical models of progressive myopathies such as muscular dystrophies. Then, the tetramethyl-pyrroline compounds have increased therapeutic profile as sodium channel blockers and an interesting cyto-protective activity. The overall profile enlarges therapeutic potential from channelopathies to myopathies in which alteration of excitation-contraction coupling is paralleled by oxidative-stress, i.e., muscular dystrophies.
机译:美西律(Mexiletine)(Mex)最近已被指定为强直性综合症的一种孤儿药,是骨骼肌钠通道(NaV1.4)的一种依赖于使用的有效阻断剂。关于Mex及其四甲基吡咯啉衍生物在体内的潜在抗氧化作用的现有证据表明,可能进一步扩大Mex样化合物在肌病中的治疗潜力,在肌病中,激发-收缩偶联的改变与氧化应激平行。与此相符并基于我们先前的结构-活性-关系研究,我们合成了在Mex(VM11)及其有效使用依赖的异丙基衍生物(CI16)的氨基上具有四甲基吡咯啉环的新化合物)。测试了这些化合物阻断天然NaV1.4的能力,并针对成肌细胞发挥抗氧化应激损伤的细胞保护作用。进行了成年肌纤维的电压钳记录,以评估VM11和CI16以及Mex,VM11和CI16的强力和使用依赖性的钠电流峰值(INa)阻滞分别是Mex的3倍和6倍分别产生峰值钠电流(INa)的滋补阻滞。有趣的是,在高频刺激(10 Hz)期间,CI16的功效相对于Mex增加了40倍,是迄今为止最强的依赖于使用的Mex样化合物。导数也表现为灭活的通道阻滞剂,但是与电压有关的阻滞作用不大。实验数据符合基于先前提出的主要药效团与NaV1.4结合位点相互作用的分子模型模拟。然后将CI16和VM11与Mex及其异丙基衍生物(Me5)进行比较,以了解在Nav1.4有效浓度范围内,保护C2C12细胞免受H2O2细胞毒性的能力。 Mex和Me5在存在H2O2的情况下显示出中等的细胞保护作用。重要的是,CI16和VM11在对使用依赖性NaV1.4阻断有效的浓度下显示出显着的细胞保护作用。该效果与所选抗氧化剂药物的效果相当,事实证明该抗氧化剂在渐进性肌病(例如肌肉营养不良)的临床前模型中具有保护作用。然后,四甲基吡咯啉化合物作为钠通道阻滞剂具有增强的治疗作用,并具有令人感兴趣的细胞保护活性。总体概况扩大了从通道病到肌病的治疗潜力,其中兴奋-收缩偶联的改变与氧化应激即肌肉营养不良平行。

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